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The Optimal Spectrum Sensing Time for Maximizing Throughput of 802.11-Based MAC Protocol for Cognitive Radio Networks Under Unsaturated Traffic Conditions

机译:在不饱和话务条件下最大化认知无线网络基于802.11的MAC协议的吞吐量的最佳频谱感知时间

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摘要

Cognitive radio has attracted considerable attention as an enabling technology for addressing the problem of radio frequency shortages. In cognitive radio networks (CRNs), secondary users (SUs) are allowed to opportunistically utilize the licensed spectrum bands of primary users (PUs) when these bands are temporarily unused. Thus, SUs should monitor the licensed spectrum bands to detect any PU signal. According to the sensing outcomes, SUs should vacate the spectrum bands or may use them. Generally, the spectrum sensing accuracy depends on the sensing time which influences the overall throughput of SUs. That is, there is a fundamental tradeoff between the spectrum sensing time and the achievable throughput of SUs. To determine the optimal sensing time and improve the throughput of SUs, considerable efforts have been expended under the saturated traffic and ideal channel assumptions. However, these assumptions are hardly valid in practical CRNs. In this paper, we provide the framework of an 802.11-based medium access control for CRNs, and we analyze this framework to find the optimal spectrum sensing time under the saturated and unsaturated traffic condition. Through simulation, the proposed analytic model is verified and the fundamental problem of the sensing-throughput tradeoff for CRNs is investigated.
机译:认知无线电作为解决无线电频率短缺问题的使能技术已引起了相当大的关注。在认知无线电网络(CRN)中,当临时用户未使用时,允许次要用户(SU)机会利用主用户(PU)的许可频段。因此,SU应监视许可的频谱带以检测任何PU信号。根据感测结果,SU应腾出频谱频段或可以使用它们。通常,频谱感测精度取决于感测时间,这会影响SU的整体吞吐量。即,在频谱感测时间和SU可实现的吞吐量之间存在基本的权衡。为了确定最佳感测时间并提高SU的吞吐量,在饱和流量和理想信道假设下已经付出了相当大的努力。但是,这些假设在实际的CRN中几乎无效。在本文中,我们为CRN提供了基于802.11的媒体访问控制的框架,并分析了该框架以找到在饱和和非饱和流量条件下的最佳频谱感知时间。通过仿真,验证了所提出的分析模型,并研究了CRNs的传感吞吐量权衡的基本问题。

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